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Operational Modeling of Heliospheric Space Weather for the Parker Solar Probe

机译:帕克太阳能探头的幽灵空间天气运行建模

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摘要

The interpretation of multi-spacecraft heliospheric observations and three-dimensional reconstruction of the structured and evolving solar wind with propagating and interacting coronal mass ejections (CMEs) is a challenging task. Numerical simulations can provide global context and suggest what may and may not be observed. The Community Coordinated Modeling Center (CCMC) provides both mission science and space weather support to all heliospheric missions. Currently, this is realized by real-time simulations of the corotating and transient disturbances by the WSA-ENLIL-Cone model. We have simulated the heliospheric space weather relevant to the Parker Solar Probe (PSP) mission since 2018 September and provided numerical results to our colleagues analyzing in situ measurements published in the ApJS Special Issue. In this paper, we do not analyze PSP data, but we present recent updates in simulating the background solar wind and compare them with an existing operational model around the first PSP Perihelion, from 2018 October to 2018 December. We introduce new tools that assist in the interpretation of remote observations and in situ measurements useful for PSP and other missions, and for predicting heliospheric space weather. We also use this opportunity to evaluate recent improvements in the WSA and ADAPT-WSA coronal models that are being transitioned and considered to be transitioned, respectively, to operations. Finally, we simulate CME-like hydrodynamic ejecta with various parameters and calculated synthetic white-light images that can be used for "mid-course" correction of operational predictions.
机译:用传播和交互冠状质量喷射(CMES)的结构化和演化太阳能的结构化和演化太阳脉风的三维重建的解释是一个具有挑战性的任务。数值模拟可以提供全局背景,并建议可能且可能无法观察到什么。社区协调的建模中心(CCMC)为所有Heliosheric任务提供了任务科学和空间天气支持。目前,这是通过WSA-EnliL-Cone模型的瞬时杀菌的实时模拟来实现。我们自2018年9月以来,模拟了与帕克太阳能探针(PSP)使命相关的Heliospheric空间天气,并为我们的同事提供了数值结果,分析了APJS特殊问题的原位测量。在本文中,我们没有分析PSP数据,但我们在2018年10月至2018年12月到2018年到2018年到2018年10月至2018年12月至2018年10月至2018年10月至2018年至2018年10月至2018年12月至2018年10月至2018年,我们提出了最近的最新更新。我们介绍了新的工具,有助于解释远程观察和对PSP和其他任务的原位测量,以及预测赫利托斯空间天气。我们还使用此机会评估最近正在转型的WSA和适应WSA冠状模型的改进,分别分别转换为操作。最后,我们模拟了与各种参数的CME型流体动力学喷射器,并计算出可用于“中间过程”的操作预测校正的合成白光图像。

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